A 2D and 3D melanogenesis model with human primary cells induced by tyrosine
Author(s) -
Maryana Stephany Ferreira Branquinho,
Maysa B. Silva,
Jacqueline C. Silva,
Maria Clara De Oliveira Gomes Sales,
Sílvia Berlanga de Moraes Barros,
Silvya Stuchi MariaEngler,
Ana Čampa
Publication year - 2020
Publication title -
journal of biological methods
Language(s) - English
Resource type - Journals
ISSN - 2326-9901
DOI - 10.14440/jbm.2020.327
Subject(s) - melanosome , melanin , microphthalmia associated transcription factor , tyrosine , human health , human skin , primary (astronomy) , staining , chemistry , biology , microbiology and biotechnology , tyrosinase , biochemistry , medicine , genetics , enzyme , environmental health , physics , astronomy
Research on melanogenesis, its regulation in health and disease, and the discovery of new molecules with pigmenting and depigmenting activities use different models. Here we standardize a protocol based on previous ones using primary human melanocytes and keratinocytes in co-cultures, in which melanogenesis was induced under mild conditions by the addition of tyrosine plus ammonium chloride (NHCl). The expression of MITF, TYR, TYRP1, and Melan-A as well as melanin content were measured. Furthermore, we extended this study to a reconstructed 3D model. Pigmentation was visually observable and melanosomes were identified by Fontana-Masson staining by the addition of tyrosine plus NHCl during the stratification phase. The 2D and 3D protocols proposed here circumvent limitations of previous models, using human primary cells and mild conditions for melanogenesis. These protocols offer a viable, robust, simple, and animal-free investigational option for human skin pigmentation studies and screening tests for new compounds that modulate pigmentation.
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